Quality, Reliability, Security and Robustness in Heterogeneous Systems. 13th International Conference, QShine 2017, Dalian, China, December 16 -17, 2017, Proceedings

Research Article

On the Use of Smart Wearable Technology for Gynecology and Obstetrics Care

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  • @INPROCEEDINGS{10.1007/978-3-319-78078-8_22,
        author={Shang-Yun Sun and Chung-Chin Lin and Jie Wang},
        title={On the Use of Smart Wearable Technology for Gynecology and Obstetrics Care},
        proceedings={Quality, Reliability, Security and Robustness in Heterogeneous Systems. 13th International Conference, QShine 2017, Dalian, China, December 16 -17, 2017, Proceedings},
        proceedings_a={QSHINE},
        year={2018},
        month={4},
        keywords={Wearable Technology Bluetooth Low Energy Infant bracelet BLE Gateway Infant Management Software System RSSI-Distance Model BLEG Threshold Configure Method},
        doi={10.1007/978-3-319-78078-8_22}
    }
    
  • Shang-Yun Sun
    Chung-Chin Lin
    Jie Wang
    Year: 2018
    On the Use of Smart Wearable Technology for Gynecology and Obstetrics Care
    QSHINE
    Springer
    DOI: 10.1007/978-3-319-78078-8_22
Shang-Yun Sun1,*, Chung-Chin Lin,*, Jie Wang2,*
  • 1: Y-FA Technology Co., Ltd.
  • 2: Dalian University of Technology
*Contact email: sunshangyun@yfa.com.tw, cclin@mail.cgu.edu.tw, wangjie1003@163.com

Abstract

This paper applies Smart Wearable Technology (SWT) to Gynecology and Obstetrics Care, to protect new born babies from being stolen. We designed a wearable infant bracelet based on Bluetooth Low Energy (BLE) technology which can monitor posture of baby, and built BLE Gateway (BLEG) network to collect broadcast data from the former; at the same time, we developed Infant Management Software System (IMSS) for indoor positioning and events classification. We also designed three experiments: Experiment A is to build RSSI-Distance Model of infant bracelet and the results show that the RSSI will attenuate with distance increasing within ten meters; Experiment B is to test the reliability of BLEG and the results show that two BLEGs cooperation can reduce the missing rate compared with only one BLEG; Experiment C is to evaluate three BLEG Threshold Configure Methods (BTCM) including Static, Half-Dynamic and Dynamic used in indoor positioning and the results show that Dynamic is the best method of three Methods by miss rate of 3.66%. The product of this paper has been applied to the fourth hospital of Shijiazhuang City.